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在允许的体内模型中,对抗病毒治疗方案效果的纵向监测。

Longitudinal Monitoring of the Effects of Anti-Adenoviral Treatment Regimens in a Permissive In Vivo Model.

机构信息

Department of Molecular Microbiology and Immunology, Saint Louis University School of Medicine, St. Louis, MO 63104, USA.

TSRL, Inc., Ann Arbor, MI 48108, USA.

出版信息

Viruses. 2024 Jul 26;16(8):1200. doi: 10.3390/v16081200.

Abstract

Adenovirus infections of immunocompromised patients can cause life-threatening disseminated disease. While there are presently no drugs specifically approved to treat these infections, there are several compounds that showed efficacy against adenovirus in preclinical studies. For any such compound, low toxicity is an essential requirement. As cumulative drug effects can accentuate pathology, especially in patients with other morbidities, it is important to limit antiviral exposure to what is absolutely necessary. This is achievable by monitoring the virus burden of the patients and administering antivirals to suppress virus replication to a non-pathogenic level. We modeled such a system using Syrian hamsters infected with a replication-competent adenovirus vector, in which luciferase expression is coupled to virus replication. We found that virus replication could be followed in vivo in the same animal by repeated measurement of luciferase expression. To test the utility of an interrupted treatment regimen, we used NPP-669 and valganciclovir, two antiviral compounds with high and moderate anti-adenoviral efficacy, respectively. We found that short-term treatment of adenovirus-infected hamsters at times of peak virus replication can prevent virus-associated pathology. Thus, we believe that this animal model can be used to model different treatment regimens for anti-adenoviral compounds.

摘要

免疫功能低下患者的腺病毒感染可导致危及生命的全身性疾病。目前尚无专门批准用于治疗这些感染的药物,但有几种化合物在临床前研究中显示出对腺病毒的疗效。对于任何此类化合物,低毒性都是必不可少的要求。由于累积的药物作用会加重病理,尤其是在患有其他疾病的患者中,因此限制抗病毒药物的使用至关重要,只需达到绝对必要的程度即可。通过监测患者的病毒负担并给予抗病毒药物抑制病毒复制至非致病性水平,就可以实现这一点。我们使用感染了复制型腺病毒载体的叙利亚仓鼠来模拟这样的系统,其中荧光素酶表达与病毒复制偶联。我们发现可以通过重复测量荧光素酶表达来在同一动物体内体内跟踪病毒复制。为了测试中断治疗方案的实用性,我们使用了 NPP-669 和缬更昔洛韦,这两种抗病毒化合物分别具有高和中度的抗腺病毒疗效。我们发现,在病毒复制高峰期对感染腺病毒的仓鼠进行短期治疗可以预防与病毒相关的病理。因此,我们认为该动物模型可用于模拟抗腺病毒化合物的不同治疗方案。

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